LU Xia, LUAN Sheng, CAO Baoxiang, SUI Juan, DAI Ping, MENG Xianhong, LUO Kun, KONG Jie. Heterosis and heritability estimates for the survival of the Pacific white shrimp (Litopenaeus vannamei) under the commercial scale ponds[J]. Acta Oceanologica Sinica, 2017, 36(2): 62-68. doi: 10.1007/s13131-016-0942-6
Citation: LU Xia, LUAN Sheng, CAO Baoxiang, SUI Juan, DAI Ping, MENG Xianhong, LUO Kun, KONG Jie. Heterosis and heritability estimates for the survival of the Pacific white shrimp (Litopenaeus vannamei) under the commercial scale ponds[J]. Acta Oceanologica Sinica, 2017, 36(2): 62-68. doi: 10.1007/s13131-016-0942-6

Heterosis and heritability estimates for the survival of the Pacific white shrimp (Litopenaeus vannamei) under the commercial scale ponds

doi: 10.1007/s13131-016-0942-6
  • Received Date: 2015-12-19
  • Rev Recd Date: 2016-05-13
  • The aim of the present study is to detect the potential of the base population from diallel crosses of eight introduced strains of the Pacific white shrimp (Litopenaeus vannamei) for improving the yield. Heterosis and heritability were estimated for pond survival at commercial farm conditions for the base population that included 207 full-sib families from a nested mating design by artificial insemination. Among all the hybrids, the heterosis ranged from -11.37% (UA1×UA2) to 20.53% (UA3×SIN) with an average of 0.953%. The results showed that more than half of the hybrids (51.85%) have negative heterosis for survival rate, but most of the hybrids with positive heterosis have high estimates. The high proportion of negative heterosis for survival rate reminders us that the survival trait also should be considered in the crossbreeding program to avoid yield decrease. However, high positive heterosis manifested in most of the hybrids for survival indicates the usefulness of these hybrids for improving the survival to obtain higher yield by crossbreeding in this breeding program. The heritability estimate for pond survival was 0.092±0.043 when genetic groups were included in the pedigree, and it was significantly different from zero (P<0.05). The results from this study also indicated that significant improvement for survival is possible through selection in L. vannamei.
  • loading
  • Andriantahina F, Liu Xiaolin, Huang Hao. 2013. Genetic map construction and quantitative trait locus (QTL) detection of growth-related traits in Litopenaeus vannamei for selective breeding applications. PLoS One, 8(9):e75206
    Argue B J, Arce S M, Lotz J M, et al. 2002. Selective breeding of Pacific white shrimp (Litopenaeus vannamei) for growth and resistance to Taura Syndrome Virus. Aquaculture, 204(3-4):447-460
    Bierne N, Beuzart I, Vonau V, et al. 2000. Microsatellite-associated heterosis in hatchery-propagated stocks of the shrimp Penaeus stylirostris. Aquaculture, 184(3-4):203-219
    Briggs M, Funge-Smith S, Subasinghe R, et al. 2005. The introduction of Penaeus vannamei and P. stylirostrisinto the Asia-Pacific region. Case studies. In:By Bartley D M, Bhujel R C, Funge-Smith S, et al., eds. International Mechanisms for the Control and Responsible Use of Alien Species in Aquatic Ecosystems, Report of an Ad Hoc Expert Consultation. Rome:FAO, 9-10
    Campos-Montes G R, Montaldo H H, Martínez-Ortega A, et al. 2013. Genetic parameters for growth and survival traits in Pacific white shrimp Penaeus (Litopenaeus) vannamei from a nucleus population undergoing a two-stage selection program. Aquaculture International, 21(2):299-310
    Castillo-Juárez H, Casares J C, Campos-Montes G, et al. 2007. Heritability for body weight at harvest size in the Pacific white shrimp, Penaeus (Litopenaeus) vannamei, from a multi-environment experiment using univariate and multivariate animal models. Aquaculture, 273(1):42-49
    Charo-Karisa H, Komen H, Rezk M A, et al. 2006. Heritability estimates and response to selection for growth of Nile tilapia (Oreochromis niloticus) in low-input earthen ponds. Aquaculture, 261(2):479-486
    Díaz C, Moreno A, Carabaño M J. 2002. Effects of genetic groups on estimates of variance components for a maternally influenced trait in the Spanish Limousine. Journal of Animal Breeding Genetic, 119(9):325-334
    De Donato M, Manrique R, Ramirez R, et al. 2005. Mass selection and inbreeding effects on a cultivated strain of Penaeus (Litopenaeus) vannamei in Venezuela. Aquaculture, 247(1-4):159-167
    Doyle R W. 1983. An approach to the quantitative analysis of domestication selection in aquaculture. Aquaculture, 33(1-4):167-185
    Elvingson P, Johansson K. 1993. Genetic and environmental components of variation in body traits of rainbow trout (Oncorhynchus mykiss) in relation to age. Aquaculture, 118(3-4):191-204
    Falconer D S, Mackay T F C. 1996. Introduction to Quantitative Genetics. New York and London:Longman
    Fjalestad K T, Gjedrem T, Carr W H, et al. 1997. Final report:the shrimp breeding program. Selective breeding of Penaeus vannamei. Akvaforsk. Report no. 17/97. Waimanalo, HI, USA:The Oceanic Institute, 85
    Freitas P D, Calgaro M R, Galetti Jr P M. 2007. Genetic diversity within and between broodstocks of the white shrimp Litopenaeus vannamei (Boone, 1931) (Decapoda, Penaeidae) and its implication for the gene pool conservation. Brazilian Journal of Biology, 67(4):939-943
    Gall G A E, Bakar Y. 2002. Application of mixed-model techniques to fish breed improvement:analysis of breeding-value selection to increase 98-day body weight in tilapia. Aquaculture, 212(1-4):93-113
    Gilmour A R, Gogel B J, Cullis B R, et al. 2009. ASReml user guide release 3.0. Hemel Hempstead, HP1 1ES, UK:VSN International Ltd, 1-372
    Gitterle T, Johansen H, Erazo C, et al. 2007. Response to multi-trait selection for harvest weight, overall survival, and resistance to white spot syndrome virus (WSSV) in Penaeus (Litopenaeus) vannamei. Aquaculture, 272(S1):S262
    Gitterle T, Rye M, Salte R, et al. 2005a. Genetic (co) variation in harvest body weight and survival in Penaeus (Litopenaeus) vannamei under standard commercial conditions. Aquaculture, 243(1-4):83-92
    Gitterle T, Salte R, Gjerde B, et al. 2005b. Genetic (co) variation in resistance to White Spot Syndrome Virus (WSSV) and harvest weight in Penaeus (Litopenaeus) vannamei. Aquaculture, 246(1-4):139-149
    Gjedrem T. 2012. Genetic improvement for the development of efficient global aquaculture:a personal opinion review. Aquaculture, 344-349:12-22
    Hertzel D J S, Crocos P J, Davis G P, et al. 1997. Response to selection for growth in the Kuruma prawn Penaeus japonicus. An Abstract of the Sixth International Symposium on Genetics in Aquaculture, Scotland:Institute of Aquaculture, University of Stirling, 24-28
    Hetzel D J S, Crocos P J, Davis G P, et al. 2000. Response to selection and heritability for growth in the Kuruma prawn, Penaeus japonicus. Aquaculture, 181(3-4):215-223
    Huang Yongchun, Yin Zhixin, Ai Huashu, et al. 2011. Characterization of WSSV resistance in selected families of Litopenaeus vannamei. Aquaculture, 311(1-4):54-60
    Jonasson J. 1993. Selection experiments in salmon ranching:I. Genetic and environmental sources of variation in survival and growth in freshwater. Aquaculture, 109(3-4):225-236
    Jonasson J, Stefansson S E, Gudnason A, et al. 1999. Genetic variation for survival and shell length of cultured red abalone (Haliotis rufescens) in Iceland. Journal of Shellfish Research, 18:621-625
    Kenway M, Macbeth M, Salmon M, et al. 2006. Heritability and genetic correlations of growth and survival in black tiger prawn Penaeus monodon reared in tanks. Aquaculture, 259(1-4):138-145
    Korkeila M, Kaprio J, Rissanen A, et al. 1991. Effects of gender and age on the heritability of body mass index. International Journal of Obesity, 15(10):647-654
    Krishna G, Gopikrishna G, Gopal C, et al. 2011. Genetic parameters for growth and survival in Penaeus monodon cultured in India. Aquaculture, 318(1-2):74-78
    Li Zhaoxia, Li Jian, Wang Qingyin, et al. 2006. The effects of selective breeding on the genetic structure of shrimp Fenneropenaeus chinensis populations. Aquaculture, 258(1-4):278-282
    Lightner D V, Redman R M, Pantoja C R, et al. 2012. Early mortality syndrome affects shrimp in Asia. Global Aquaculture Advocate, 40
    Lin Hongjun, Shen Qi, Zhang Lüping, et al. 2010. A diallel analysis on growth traits in shrimp Litopenaeus vannamei. Journal of Tropical Oceanography (in Chinese), 29(6):51-56
    Lu Xia, Luan Sheng, Luo Kun, et al. 2015. Genetic analysis of the Pacific white shrimp (Litopenaeus vannamei):heterosis and heritability for harvest body weight. Aquaculture Research, 47(11):3365-3375. doi: 10.1111/are.12820[DOI:10.1111/are.12820]
    Luan Sheng, Luo Kun, Ruan Xiaohong, et al. 2013. Genetic parameters and genotype by environment interaction for body weight and survival of Pacific white shrimp Litopenaeus vannamei. Oceanologiaet Limnologia Sinica (in Chinese), 44(2):445-452
    Luan Sheng, Wang Junyi, Yang Guoliang, et al. 2015. Genetic parameters of survival for six generations in the giant freshwater prawn Macrobrachium rosenbergii. Aquaculture Research, 46:1345-1355
    Luo M F, Boettcher P J, Schaeffer L R, et al. 2001. Bayesian inference for categorical traits with an application to variance component estimation. Journal of Dairy Science, 84(3):694-704
    Maluwa A O, Gjerde B. 2006. Genetic evaluation of four strains of Oreochromis shiranus for harvest body weight in a diallel cross. Aquaculture, 259(1-4):28-37
    Martínez V, Kause A, Mäntysaari E, et al. 2006. The use of alternative breeding schemes to enhance genetic improvement in rainbow trout:II. Two-stage selection. Aquaculture, 254(1-4):195-202
    Murray C B, Beacham T D, Barner L W. 1993. Growth and survival of newly emerged and juvenile coho salmon (Oncorhynchus kisutch) reared at different salinities. Canadian Journal of Zoology, 71(6):1230-1237
    Ng M Y M, Sham P C, Paterson A D, et al. 2006. Effect of environmental factors and gender on the heritability of bone mineral density and bone size. Annals of Human Genetics, 70(4):428-438
    Nguyen N H, Khaw H L, Ponzoni R W, et al. 2007. Can sexual dimorphism and body shape be altered in Nile tilapia (Oreochromis niloticus) by genetic means?. Aquaculture, 272(S1):S38-S46
    Nielsen H M, Ødegård J, Olesen I, et al. 2010. Genetic analysis of common carp (Cyprinus carpio) strains:I. genetic parameters and heterosis for growth traits and survival. Aquaculture, 304(1-4):14-21
    Pieramati C, Van Vleck L D. 1993. Effect of genetic groups on estimates of additive genetic variance. Journal of Animal Science, 71(1):66-70
    Ponzoni R W, Hamzah A, Tan S, et al. 2005. Genetic parameters and response to selection for live weight in the GIFT strain of Nile Tilapia (Oreochromis niloticus). Aquaculture, 247(1-4):203-210
    Rezk M A, Ponzoni R W, Khaw H L, et al. 2009. Selective breeding for increased body weight in a synthetic breed of Egyptian Nile tilapia, Oreochromis niloticus:response to selection and genetic parameters. Aquaculture, 293(3-4):187-194
    Ruan Xiaohong, Luo Kun, Luan Sheng, et al. 2013. Evaluation of growth performance in Litopenaeus vannamei populations introduced from other nations. Journal of Fisheries in China, 37(1):34-42
    Rye M, Lillevik K M, Gjerde B. 1990. Survival in early life of Atlantic salmon and rainbow trout:estimates of heritabilities and genetic correlations. Aquaculture, 89(3-4):209-216
    Sahoo S K, Giri S S, Chandra S, et al. 2010. Stocking density-dependent growth and survival of Asian sun catfish, Horabagrus brachysoma (Gunther 1861) larvae. Journal of Applied Ichthyology, 26(4):609-611
    SAS Institute Inc. 2005. SAS/STAT Software:Version 9.1.3 (TS1M3) for Microsoft Windows. Cary, NC, USA:SAS Institute
    Sbordoni V, De Matthaeis E, Sbordoni M C, et al. 1986. Bottleneck effects and the depression of genetic variability in hatchery stocks of Penaeus japonicus (Crustacea, Decapoda). Aquaculture, 57(1-4):239-251
    Standal M, Gjerde B. 1987. Genetic variation in survival of Atlantic salmon during the sea-rearing period. Aquaculture, 66(3-4):197-207
    Sun Miaomiao, Huang Jianhua, Jiang Shigui, et al. 2015. Estimates of heritability and genetic correlations for growth-related traits in the tiger prawn Penaeus monodon. Aquaculture Research, 46(6):1363-1368
    Thanh N M, Ponzoni R W, Nguyen N H, et al. 2009. Evaluation of growth performance in a diallel cross of three strains of giant freshwater prawn (Macrobrachium rosenbergii) in Vietnam. Aquaculture, 287(1-2):75-83
    Vehviläinen H, Kause A, Quinton C, et al. 2008. Survival of the currently fittest:genetics of Rainbow trout survival across time and space. Genetics, 180(1):507-516
    Vela-Avitúa S, Montaldo H H, Márquez-Valdelamar L, et al. 2013. Decline of genetic variability in a captive population of Pacific white shrimp Penaeus (Litopenaeus) vannamei using microsatellite and pedigree information. Electronic Journal of Biotechnology, 16(4):doi: 10.2225/vol16-issue4-fulltext-11[DOI:10.2225/vol16-issue4-fulltext-11]
    Wang Xin'an, Ma Aijun, Huang Zhihui, et al. 2010. Heritability and genetic correlation of survival in turbot (Scophthalmus maximus). Chinese Journal of Oceanology and Limnology, 28(6):1200-1205
    Withler R E, Clarke W C, Riddell B E, et al. 1987. Genetic variation in freshwater survival and growth of Chinook salmon (Oncorhynchus tshawytscha). Aquaculture, 64(2):85-96
    Zhang Y Y, Jia Z Y, Ji F, et al. 2008. Effects of stocking density on survival, growth and size variation of juvenile Brachymystax lenok (Pallas, 1973). Journal of Applied Ichthyology, 124(6):685-689
    Zhang Tianshi, Kong Jie, Luan Sheng, et al. 2011. Estimation of genetic parameters and breeding values in shrimp Fenneropenaeus chinensis using the REML/BLUP procedure. Acta Oceanologica Sinica, 30(1):78-86
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (1086) PDF downloads(1135) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return